Project Grant R01DC021511
- The National Institute of Neurological Disorders and Stroke has awarded Albert Einstein College of Medicine a $2,923,021 Project Grant under the 21st Century Cures Act - Brain Research through Advancing Innovative Neurotechnologies (BRAIN) Initiative (CFDA 93.372). The grant, titled "Integrative Analysis of Adaptive Information Processing and Learning-Dependent Circuit Reorganization in the Auditory System," will fund research to investigate the neural mechanisms underlying auditory...
- This federal Project Grant award from the National Institute of Mental Health (CFDA 93.242 Mental Health Research Grants) provides $460,855 to New York University School of Medicine to investigate the cellular and circuit mechanisms by which acetylcholine (ACh) promotes associative learning in the primary somatosensory cortex. The key objectives are to: 1) use fluorescent ACh sensors and chemogenetic techniques to study the magnitude and time course of ACh release during different phases of an...
- Summary of Federal Project Grant Award New York University School of Medicine received a $134,109 Project Grant award from the National Institute on Deafness and Other Communication Disorders (NIDCD) under the Research Related to Deafness and Communication Disorders program (CFDA 93.173), effective December 19, 2025, with a completion date of November 30, 2027. This award supports a research initiative investigating plasticity and social neuromodulation of developing auditory cortical...
- This Project Grant award from the National Institute on Aging (CFDA 93.866 - Aging Research) in the amount of $2,433,859 supports research at The Johns Hopkins University to investigate age-related hearing loss and cognitive decline. The key objectives are to study the molecular, cellular, and connectivity changes in the central auditory system during normal aging and Alzheimer's disease, with the goal of developing targeted therapeutic strategies. The research integrates single-cell sequencing,...
- Federal Project Grant Award Summary The National Institute on Deafness and Other Communication Disorders (NIDCD) awarded The Johns Hopkins University a Project Grant of $650,639 effective February 1, 2026 through January 31, 2031, under the Research Related to Deafness and Communication Disorders program (CFDA 93.173). This award supports fundamental neuroscience research investigating crossmodal plasticity in adult corticothalamic circuits—specifically how visual deprivation triggers...
- This $380,376 federal Project Grant award from the National Institute on Deafness and Other Communication Disorders (NIDCD) under CFDA program 93.173 "Research Related to Deafness and Communication Disorders" will support research at Brown University on the convergence of behavioral and sensory information in the olfactory cortex of mice. The key objectives are to: 1) Determine whether behavioral signals in the piriform cortex support predictive processing of odor information, and 2)...
- This $4.5 million project grant from the National Institutes of Health's National Institute of Neurological Disorders and Stroke, under the 21st Century Cures Act Brain Research through Advancing Innovative Neurotechnologies program, will fund research at Baylor College of Medicine from August 2022 to July 2025. The grant aims to advance understanding of how the neuromodulators acetylcholine and norepinephrine shape cortical responses and influence behavior. Researchers will study the spatial...
- The National Institute on Deafness and Other Communication Disorders (NIDCD), under the CFDA program "Research Related to Deafness and Communication Disorders", awarded a $193,750.00 Project Grant to The Johns Hopkins University. The grant, effective April 1, 2025 through March 31, 2028, will fund research to investigate the neural dynamics and underlying mechanisms in the auditory cortex during implicit learning of complex sounds. The research aims to map the neural circuits...
- The University of Rochester received a $145,989 Project Grant award from the National Institute on Deafness and Other Communication Disorders (NIDCD) to conduct research on the "Cortical Mechanisms Underlying Aberrant Auditory Perception". The 5-year project, which began on May 1, 2025, will utilize animal models and in vivo imaging techniques to determine whether altered cell-specific activity or disrupted neurotransmitter signaling in the auditory and frontal cortices underlie...
- This $610,725 Project Grant award from the National Institute on Deafness and Other Communication Disorders (NIDCD) supports research into the physiological mechanisms underlying suprathreshold deficits in sensorineural hearing loss. The project, titled "Physiological Determinants of Suprathreshold Deficits in Sensorineural Hearing Loss," will be conducted by researchers at the University of Pittsburgh from May 2, 2025 to April 30, 2030. The key objectives are to: 1) Characterize the...
SENSORY-EVOKED ADENOSINE RELEASE IN CORTICAL PLASTICITY - ABSTRACT NEURAL CIRCUITS IN SENSORY CORTICES ARE PLASTIC, I.E., THEIR PROPERTIES CHANGE AS NEW ENVIRONMENTAL INFORMATION IS INTEGRATED BASED ON ITS BEHAVIORAL VALUE. THE CAPACITY OF ACOUSTIC STIMULI ALONE TO INDUCE PLASTICITY IN THE AUDITORY CORTEX (ACX) ABRUPTLY DECLINES WITH AGE. IN ADULTS, ACX PLASTICITY IS INDUCED DURING ATTENTIVE WAKEFULNESS OR BY PAIRING ACOUSTIC STIMULI WITH THE ACTIVATION OF NEUROMODULATORY SYSTEMS, SUCH AS THE CHOLINERGIC NUCLEUS BASALIS OR DOPAMINERGIC VENTRAL TEGMENTAL AREA. IT CAN ALSO BE INDUCED IN ADULTS BY PASSIVE EXPOSURE TO ACOUSTIC STIMULI DURING EXPERIMENTAL JUVENILE-LIKE WEAKENING OF ADENOSINE SIGNALING IN GLUTAMATERGIC THALAMOCORTICAL INPUTS TO THE ACX. HOW THE NEUROMODULATORY SYSTEMS INTERACT WITH ADENOSINE TO REFINE CORTICAL CIRCUITS IS UNCLEAR. RECENTLY, WE IDENTIFIED AN EVENT WE HAVE TERMED "SOUND-EVOKED ADENOSINE RELEASE" (SEAR) IN THE ACX OF AWAKE ADULT MICE AS A KEY GATEKEEPER FOR AUDITORY CORTICAL PLASTICITY AND IMPROVEMENT IN AUDITORY FREQUENCY-DISCRIMINATION ACUITY (PERCEPTUAL PLASTICITY). SEAR ORIGINATES FROM THE THALAMOCORTICAL PROJECTIONS VIA ECTO-5-NUCLEOTIDASE ACTIVITY AND BECOMES TRANSIENTLY REDUCED WHEN ACOUSTIC STIMULI ARE TIGHTLY PAIRED WITH THE ACTIVATION OF CHOLINERGIC OR DOPAMINERGIC CIRCUITS. THESE SECONDS-LONG LOW-ADENOSINE CONDITIONS PERMIT STIMULUS-SPECIFIC ASSOCIATIVE CORTICAL AND PERCEPTUAL PLASTICITIES TO OCCUR. WE, THEREFORE, HYPOTHESIZE THAT TRANSIENT LOW-ADENOSINE PERIODS TRIGGERED BY ACTIVITY IN NEUROMODULATORY CIRCUITS ARE PREREQUISITES FOR SENSORY STIMULI TO PRODUCE BEHAVIORALLY SIGNIFICANT CORTICAL PLASTICITY IN ADULTS. IN THIS PROPOSAL, WE AIM TO ELUCIDATE THE DEVELOPMENTAL AND SPATIOTEMPORAL CHARACTERISTICS OF SEAR IN THE ACX BY USING FAST-SCANNING CYCLIC VOLTAMMETRY, WHICH DIRECTLY DETECTS EXTRACELLULAR ADENOSINE WITH SUB-SECOND TEMPORAL RESOLUTION AND 2-PHOTON IMAGING OF THE ACX USING THE GENETICALLY ENCODED FLUORESCENT ADENOSINE SENSOR GRABADO. WE ALSO PROPOSE TO TEST IF THE SEAR DECREASE DRIVEN BY NEUROMODULATORY ACTIVITY AFFECTS CORTICAL PLASTICITY OF INHIBITORY NEURONS IN THE ACX. THESE EXPERIMENTS ARE INSPIRED BY THE NOTION THAT SENSORY AND NEUROMODULATORY CONVERSION OCCURS AT THE LEVEL OF THE EXCITATORY/INHIBITORY BALANCE, AS THE NEUROMODULATORS ACT THROUGH DISINHIBITION OF LOCAL INHIBITORY MICROCIRCUITS TO ENHANCE THE EXCITABILITY OF THE CORTICAL EXCITATORY NEURONS. LASTLY, WE PROPOSE TO ELUCIDATE THE MECHANISMS OF SEAR DECREASE, WHICH DEPEND ON NEUROMODULATORY ACTIVITY. SPECIFICALLY, WE WILL DETERMINE WHETHER EQUILIBRATIVE NUCLEOSIDE TRANSPORTERS IN ASTROGLIA AND THALAMIC ADENOSINE PRODUCTION REGULATE THE LEVEL OF EXTRACELLULAR ADENOSINE DURING NEUROMODULATORY ACTIVITIES. TOGETHER, THESE EXPERIMENTS WILL ENABLE US TO CHARACTERIZE IN DETAIL THE MECHANISMS OF SEAR AS A KEY GATEKEEPER OF CORTICAL AND PERCEPTUAL PLASTICITIES IN ADULTS.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $561.8k | 5/6/25 | ||
| Not listed | $561.8k | 7/17/24 | ||
| Not listed | $561.8k | 7/17/24 |